K₃V₂(PO₄)₃/C is a gorgeous material for KIBs because of impressive voltage, good stability, fast K⁺ diffusion, and improved conductivity from carbon modification. Here, a threedimensionally active network nanocomposite of K3V2(PO4)3/C—has been intended, and established. The materials were examined using XRD, SEM and XPS to elucidate their structural, morphological, and elemental composition. Ideal cathode samples for K-ion based storage devices (KIBs) and photocatalytic ingredients in the breakdown of 2 chlorophenol (2-CP) may be the obtained K3V2(PO4)3/C nanocomposites. At 100 mAg−1 one may get a steady capacity of 121 mAhg−1 . After 2000 cycling performance, 96.3% of the ability may still be kept despite a elevated current intensity of 2000 mAg−1 . Furthermore, under comparable conditions of testing, K3V2(PO4)3/C composite shown remarkable degrading efficiency (98.5%) and rate constant (0.09761 min-1) to CR dye than against RhB dye. Additionally, performed were the functions of pH and free radical investigations. Moreover, this new K3V2(PO4)3/C nanocomposite will have enormous capacity to be applied to other industries, such particular catalysis, hydrogen generation and other ene
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